首页> 外文会议>International Seminar on ORC Power Systems >Thermodynamic Optimization of a Double-pressure Organic Rankine Cycle Driven by Geothermal Heat Source
【24h】

Thermodynamic Optimization of a Double-pressure Organic Rankine Cycle Driven by Geothermal Heat Source

机译:地热热源驱动的双压有机朗肯循环热力学优化

获取原文

摘要

Geothermal energy, as a typical low-temperature heat source, has been exploited for decades to generate electricity. Organic Rankine cycle (ORC) system has a high energy conversion efficiency due to the good performance of organic fluids under the geothermal water temperature. In this study, a double-pressure organic Rankine cycle system driven by geothermal heat source is used to generate electricity. The double-pressure ORC system achieves the cascaded utilization of energy, which can improve the efficiency of energy conversion. Mathematical model is established based on thermodynamic laws, and the overall system performance has been evaluated. A parametric analysis is conducted to examine the effects of some key thermodynamic parameters, namely turbine high-level inlet pressure, turbine low-level inlet pressure, turbine high-level inlet temperature, on the system performance. Parametric optimization is conducted by means of genetic algorithm (GA) to find the maximum system performance. At the same time, the performances of three organic working fluids are examined. Results indicate that R245fa has a better performance among the three organic fluids. The exergy efficiency of overall system exceeds 5.8% under the supply water of 120 °C, and it produce more than 800kW electricity with the geothermal water at the mass flow rate of 250t/h. It is also found that the exergy efficiency has peak value under the effect of turbine high-level inlet pressure and turbine low-level inlet pressure. In addition, increasing turbine high-level inlet temperature brings a positive effect to the system performance. Exergy analysis is also conducted and the result shows that the main exergy loss occurs in high-pressure evaporator. By system optimization, the double-pressure organic Rankine cycle has a better performance in utilizing geothermal energy than single-pressure system.
机译:作为典型的低温热源的地热能已被利用几十年来发电。由于地热水温度下有机流体的良好性能,有机朗肯循环(ORC)系统具有高能量转换效率。在该研究中,通过地热热源驱动的双压有机朗肯循环系统用于产生电力。双压兽人系统实现了能量级联利用,这可以提高能量转换效率。基于热力学定律建立数学模型,并评估了整体系统性能。进行参数分析以检查一些关键热力学参数的效果,即涡轮机高级入口压力,涡轮机低级入口压力,涡轮机高级入口温度,系统性能。参数优化是通过遗传算法(GA)进行的,以找到最大的系统性能。同时,检查三种有机工作流体的性能。结果表明,R245FA在三种有机液体中具有更好的性能。在120°C的供水下,整体系统的高度效率超过5.8%,并且在250t / h的质量流速下,地热水产生了超过800kW的电力。还发现,在涡轮机高级入口压力和涡轮机低电平入口压力的影响下,电气效率具有峰值。此外,增加涡轮机高级入口温度为系统性能带来了积极影响。还进行了漏洞分析,结果表明,在高压蒸发器中发生主要的声损。通过系统优化,双压有机朗肯循环在利用比单压系统的地热能具有更好的性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号